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Facile, high quality sequencing of bacterial genomes from small amounts of DNA.


ABSTRACT: Sequencing bacterial genomes has traditionally required large amounts of genomic DNA (~1??g). There have been few studies to determine the effects of the input DNA amount or library preparation method on the quality of sequencing data. Several new commercially available library preparation methods enable shotgun sequencing from as little as 1?ng of input DNA. In this study, we evaluated the NEBNext Ultra library preparation reagents for sequencing bacterial genomes. We have evaluated the utility of NEBNext Ultra for resequencing and de novo assembly of four bacterial genomes and compared its performance with the TruSeq library preparation kit. The NEBNext Ultra reagents enable high quality resequencing and de novo assembly of a variety of bacterial genomes when using 100?ng of input genomic DNA. For the two most challenging genomes (Burkholderia spp.), which have the highest GC content and are the longest, we also show that the quality of both resequencing and de novo assembly is not decreased when only 10?ng of input genomic DNA is used.

SUBMITTER: Vuyisich M 

PROVIDER: S-EPMC4247979 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Facile, high quality sequencing of bacterial genomes from small amounts of DNA.

Vuyisich Momchilo M   Arefin Ayesha A   Davenport Karen K   Feng Shihai S   Gleasner Cheryl C   McMurry Kim K   Parson-Quintana Beverly B   Price Jennifer J   Scholz Matthew M   Chain Patrick P  

International journal of genomics 20141113


Sequencing bacterial genomes has traditionally required large amounts of genomic DNA (~1 μg). There have been few studies to determine the effects of the input DNA amount or library preparation method on the quality of sequencing data. Several new commercially available library preparation methods enable shotgun sequencing from as little as 1 ng of input DNA. In this study, we evaluated the NEBNext Ultra library preparation reagents for sequencing bacterial genomes. We have evaluated the utility  ...[more]

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